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AN4213 Datasheet(PDF) 24 Page - STMicroelectronics

Part # AN4213
Description  Fluorescent lamps are increasingly driven by electronic
PDF  42 Pages
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Manufacturer  STMICROELECTRONICS [STMicroelectronics]
Direct Link  http://www.st.com
Logo STMICROELECTRONICS - STMicroelectronics

AN4213 Datasheet(HTML) 24 Page - STMicroelectronics

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DC/AC converter and lamp
AN4213
24/42
DocID023984 Rev 2
4.2
Lamp requirements
4.2.1
Output inductor design
The output inductor should be designed to allow a sufficient peak ignition current without
saturating. This is important as the ballast will be unable to ignite if it cannot deliver sufficient
voltage to the lamp.
The ignition current depends on the type of the lamp being used and must be kept to a
minimum by ensuring that the cathodes are sufficiently preheated. To minimize eddy current
losses in the inductor, multi-stranded wire for the windings should be used. It is important to
have a large enough air gap to produce the highest available peak current before allowing
the inductor to saturate. When the cores are hot, the saturation point and hence the peak
current for the inductor will be lower, therefore a poorly designed inductor may result in the
ballast failing to ignite the lamp during an attempted hot re-strike. The value of the output
inductor is given by following equation:
Equation 43
4.2.2
Lamp preheating
It is essential that the lamp be sufficiently preheated before ignited. In order to achieve the
maximum possible lamp life, it is necessary to heat the cathodes to the correct temperature
before ignition. Accelerated deterioration occurs if lamps are ignited when the cathodes are
either not sufficiently heated or overheated. The preheating of the cathodes allows an easy
strike of the lamp, reducing ignition voltage. During preheating time the lamp is
characterized by high impedance and the current flows through the filament. Its resistance
value is strictly dependent on the lamp model. Typically these filaments show an initially low
value (a few ohms) that will increase by 5 times during the preheating. One method to obtain
the preheating cathodes is to adopt a PTC resistor.
Figure 13 shows its typical connection.
Figure 13. Preheating circuit
run
run
in
P
f
V
L
2
2
2
π
η
=
AM17327v1
PTC
Lres
Cres
C’res
C’’res



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